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1)  Polymer dispersed liquid crystalline
高分子分散液晶
2)  liquid crystalline polymer
液晶高分子
1.
Based on the liquid crystalline polymer theory,a kind of polyacrylate was synthesized by choosing biphenyl group as rigid nucleus of mesogenic unit and hexylidene as flexible spacing group.
依据液晶分子结构理论,选择联苯基作为介晶基元,六亚甲基为柔性间隔基,合成了一种丙烯酸酯侧链型液晶高分子。
2.
Hydrogen-bonded liquid crystalline polymers characterized by its unique dynamic functions and its simplicity of structure adjustment and easily modification are formed from chemically modified polymer complex by means of hydrogen-bond.
氢键型液晶高分子是由经化学修饰过的高分子通过氢键形成的高分子复合物,具有独特的动力学功能,分子结构调整和修饰简便,可用于显示器、光电元件、信息传导等研究领域,具有极好的应用前景。
3.
Based on the morphology and reinforcement mechanism of liquid crystalline polymer/thermoplastic in-situ reinforcement composite materials,the recent developments in this field are reviewed.
从液晶高分子原位复合材料的形貌特征、增强机理出发,综述了近几年来在此领域的研究进展。
3)  liquid crystal polymer
液晶高分子
1.
Polyblend fibers from liquid crystal polymers and polypropylene (Ⅰ): the formation of fiber structure;
液晶高分子和聚丙烯的共混纤维(Ⅰ):纤维结构的形成
2.
Polyblend fibers from liquid crystal polymers and polypropylene Ⅱ:drawing behavior of the polyblend fibers;
液晶高分子和聚丙烯的共混纤维(Ⅱ):纤维的牵伸性能
3.
Polyblend fibers from liquid crystal polymers and polypropylene(Ⅲ):physical and mechanical properties of the polyblend fibers;
液晶高分子和聚丙烯的共混纤维(Ⅲ):纤维的物理机械性能
4)  liquid crystal polymers
液晶高分子
1.
6-hydroxy-2-naphthoic acid used as intermediate of liquid crystal polymers with broad export perspective;
出口前景广阔的液晶高分子中间体2,6酸
2.
The main task of molecule design of main chain liquid crystalline polymers in the future are brought forward according to the difference between lyotropic and thermotropic main chain liquid crystal polymers structures.
简单介绍了液晶高分子的结构特点、分类及其应用状况 ,详细介绍了主链型和侧链型液晶高分子分子设计的新进展。
5)  polymer liquid crystal
高分子液晶
1.
Results show that polymer liquid crystals and low molecular weight liquid crystal oriented in the direction of the applied field, the permeability coefficients for oxygen or nitrogen increased, po2/pN2 had only a slight decrease, and the isotropic solution did not orient in the field.
应用偏光显微镜、扫描电子显微镜、DSC以及测定氧氮渗透性,对乙基纤维素液晶溶液和低分子液晶共混膜在电场下取向膜和非取向膜的结构和性能进行研究,结果表明;高分子液晶和低分子液晶在电场下均发生排列取向,渗透系数提高,渗透比稍微降低;各向同性溶液在电场下不发生取向;撤离电场后,发生部分解取向,解取向程度与MBHpA的含量和实验温度有关。
2.
In21st century, through simulates vivo-liquid crystal environment to construct goodbiocompatibility polymer liquid crystal material is a new aspect of biomaterial research.
液晶态结构在生物体的新陈代谢过程中发挥着非常重要的作用,通过模拟体内液晶态环境来构建生物相容性良好的高分子液晶复合材料,是21世纪生物材料领域的研究新方向。
6)  liquid crystal polymer
高分子液晶
1.
The history ofthe development of liquid crystal and liquid crystal polymer is simply summarized Meanwhile, the various applications of liquid crystal polymers on fibers, plastics, compound materials, separating material, information materials and biology materials are mainly reviewed.
简单介绍了高分子液晶的发展历史 ,对高分子液晶在纤维、塑料、复合材料、分离材料、信息材料及生物材料领域的应用作了较为详细的阐述。
补充资料:高分子分散剂ELVACITE
分子式:
CAS号:

性质:EL-VACITE一类高分子分散剂。为美国杜邦公司推荐。分子中含有提供立体障碍的嵌段共聚物结构及与颜料表面结合的基团,可有效地分散活性低的颜料粒子,降低研磨基料黏度,提高分散效率,并与多种树脂连结料有良好的相容性。典型的商品有:Elvacite AB1010,AB1015,AB1020,AB1030等,其中AB1015适用于将碱性及两性颜料粒子分散在中等极性溶剂中,其余品种适用于将酸性及两性颜料粒子分散于芳烃溶剂中。

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